Over 0–100 km/h, 911 Turbo 991.2 wins (3,04 s vs 4,03 s).
Performance comparison
Simulated drag race 0 → 1,000 m in real time. Synchronised speed counters and stopwatch. Physics calibration on 7 manufacturer measurements.
Simulation
Calibration
Physics model calibrated on manufacturer splits. The limited top speed is not the real aerodynamic top speed of the vehicles.
| 911 Turbo 991.2 | S6 Avant e-tron | |
|---|---|---|
| 0–100 km/h | 3,04 s−0,99 s | 4,03 s |
| 400 m standing start | 10,79 s−1,50 s | 12,29 s |
| 1,000 m standing start | 19,65 s−2,80 s | 22,45 s |
| Top speed (electronically limited) | 315 km/h+75 km/h | 240 km/h |
| Power-to-weight ratio | 2,92 kg/hpbetter ratio | 4,30 kg/hp |
Standing-start drag race, calibrated on manufacturer splits. The gap shows at each stage.
Simulated performance at each stage. Winner in green.
| Palier | 911 Turbo 991.2 | S6 Avant e-tron |
|---|---|---|
| 0–30 km/h | 0,86 s | 1,11 s |
| 0–50 km/h | 1,43 s | 1,85 s |
| 0–80 km/h | 2,35 s | 3,01 s |
| 0–100 km/h | 3,04 s | 4,03 s |
| 0–120 km/h | 3,96 s | 5,31 s |
| 0–160 km/h | 6,24 s | 9,17 s |
| 0–200 km/h | 9,46 s | 14,84 s |
| 400 m standing start | 10,79 s | 12,29 s |
| 1,000 m standing start | 19,65 s | 22,45 s |
| Top speed | 315 km/h | 240 km/h |
Manufacturer technical specifications. The power-to-weight ratio is the key physical factor in a drag race.
| Characteristic | Value | Detail |
|---|---|---|
| Power | 547 hp | B6 |
| Torque | 659 Nm | |
| Weight | 1 595 kg | manufacturer kerb weight |
| Drivetrain | Integrale (AWD) | |
| Gearbox | DUAL_CLUTCH |
| Characteristic | Value | Detail |
|---|---|---|
| Power | 543 hp | Pending |
| Torque | 855 Nm | |
| Weight | 2 335 kg | manufacturer kerb weight |
| Drivetrain | Integrale (AWD) | |
| Gearbox | Unknown |
Off the line, the 911 Turbo hits 100 km/h in 3.04 s versus 4.03 s for the S6 Avant e-tron. Despite lacking instant torque, 547 hp of power compensates. At this point, the 911 Turbo leads by 0.99 s and sits roughly 9 m ahead.
At 200 metres, the 911 Turbo is doing 171 km/h against 150 km/h for the S6 Avant e-tron. The gap is 0.92 s. The gap remains stable from the start.
At 400 metres standing start, the 911 Turbo crosses the line in 10.79 s versus 12.29 s. The 1.50 s gap represents roughly 74 m of track - a gap visible to the naked eye.
Past 400 metres, the 911 Turbo continues to build its lead. At 600 metres, it runs at 238 km/h versus 206 km/h. At 1,000 metres, the 911 Turbo finishes in 19.64 s versus 22.44 s, with a 2.80 s lead.
Both rivals are electronically governed, but not at the same level: the 911 Turbo is capped at 319 km/h, the S6 Avant e-tron at 240 km/h. This isn’t a physical engine limit - it’s a manufacturer choice, usually for tyre safety or homologation reasons. Neither car reaches its true aerodynamic top speed.
Instant electric torque gives an advantage off the line. The higher top speed of the combustion engine gives an advantage over longer distances. The distance at which one catches the other depends on the top speed differential.
In European road use (130 km/h max), both vehicles reach the legal speed limit in under 6.10 seconds. The 0.99 s difference in 0 to 100 km/h is mostly felt in motorway merging and overtaking.
Over 0–100 km/h, 911 Turbo 991.2 wins (3,04 s vs 4,03 s).
911 Turbo 991.2 goes from 0 to 100 km/h in 3,04 seconds (calibrated simulation).
911 Turbo 991.2: 547 hp, ratio 2,92 kg/hp. S6 Avant e-tron: 543 hp, ratio 4,30 kg/hp.
911 Turbo 991.2: 315 km/h. S6 Avant e-tron: 240 km/h.